IP Library Granted Patent US 11,207,104
Granted Patent B2
US 11,207,104 · App. 16/401,962 · Granted Dec 28, 2021

External fixation device

Inventors: Michael W. Mullaney (Naples, FL); Stephen T. Miller (Scotts Valley, CA); William B. Austin (Germantown, TN); Todd A. Martens (Denver, CO)
Assignee: OrthoPediatrics Corp.
A61B17/6475A61B17/66
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,207,104
App. No.
16/401,962
Granted
Dec 28, 2021
Kind
B2
Abstract

An external fixation system for the correction of long bone deformities includes an elongate beam element having an engagement feature along a longitudinal edge of the elongate beam element, a connector element secured to the elongate beam and structurally configured to support a first bone anchor extending from the external fixation system, and a movable carriage engaged with the engagement feature along the longitudinal edge of the elongate beam element and selectively movable along the engagement feature of the elongate beam element. The movable carriage is selectively lockable into a position along the elongate beam element. The movable carriage is structurally configured to support a second bone anchor extending from the external fixation system.

Claims (49)

1. A fixation system for the treatment of long bones, the system comprising:

an elongate beam element defining a longitudinal axis;

a connector element carried by the elongate beam element and comprising a rotation joint;

an anchor block connected to the rotation joint and structurally configured to support a first bone anchor; and

a hinge element pivotable about a hinge axis and configured to span a joint of a patient and connect the first bone anchor relative to a second bone anchor and configured to allow the first and second bone anchors to rotate relative to one another about the hinge axis,

wherein the rotation joint of the connector element is configured to selectively adjust the first bone anchor to different angles in relation to the elongate beam element, and

wherein the hinge axis is separate from a rotation axis of the rotation joint of the connector element, and

wherein the hinge element is connectable to the anchor block to rotate about the rotation joint of the connector element such that the hinge element maintains its position relative to the first bone anchor while rotating relative to the elongate beam element.

2. The fixation system of claim 1 , wherein the hinge element comprises a hinge yoke and a hinge bracket, the hinge yoke spanning the hinge bracket.

3. The fixation system of claim 2 , wherein the hinge bracket is fixedly connectable to the anchor block.

4. The fixation system of claim 2 , wherein the hinge bracket comprises slots configured to allow the hinge bracket to be connected to the anchor block such that the hinge axis can be placed in a range of heights relative to the bone anchor.

5. The fixation system of claim 2 , wherein the hinge bracket comprises a rotating connector element configured to allow the hinge bracket to be rotatably connected to the anchor block.

6. The fixation system of claim 5 , wherein the rotating connector element comprises a lock to prevent rotation of the rotating connector element.

7. The fixation system of claim 6 , wherein the lock comprises a splined, serrated, knurled, or roughened element that, when secured in a locking position, interdigitates with features on the connector element to prevent rotation of the rotating connector element.

8. The fixation system of claim 2 , wherein the hinge yoke or the hinge bracket is attachable with a second elongate beam element, a movable carriage, or a second connector element.

9. A fixation system for the treatment of long bones, the system comprising:

an elongate beam element defining a longitudinal axis;

an anchor block carried by the elongate beam element and structurally configured to support a first bone anchor, the anchor block being rotatable relative to the elongate beam element to rotate the first bone anchor relative to the elongate beam element; and

a hinge element pivotable about a hinge axis and configured to span a joint of a patient and connect the first bone anchor relative to a second bone anchor and configured to allow the first and second bone anchors to rotate relative to one another about the hinge axis, the hinge element being connectable to the anchor block to rotate with the anchor block such that the hinge element maintains position relative to the first bone anchor while rotating relative to the elongate beam element.

10. The fixation system of claim 9 , wherein the hinge element comprises a hinge yoke and a hinge bracket, the hinge yoke spanning the hinge bracket.

11. The fixation system of claim 10 , comprising a movable carriage configured to selectively move along the elongate beam element and structurally configured to support the anchor block and the first bone anchor.

12. The fixation system of claim 11 , wherein one of the hinge yoke and the hinge bracket is fixedly connectable to the movable carriage.

13. The fixation system of claim 11 , wherein the hinge bracket comprises a rotating connector feature configured to allow the hinge bracket to be rotatably connected to the movable carriage.

14. The fixation system of claim 13 , wherein the rotating connector feature comprises a lock to prevent rotation of the rotating connector feature.

15. The fixation system of claim 14 , wherein the lock comprises a serrated element that, when secured in a locking position, interdigitates with features on the anchor block to prevent rotation of the rotating connector feature.

16. The fixation system of claim 10 , wherein the hinge bracket comprises slots configured to allow the hinge bracket to be connected to the anchor block such that the hinge axis can be placed in a range of heights relative to the first bone anchor.

17. The fixation system of claim 10 , wherein the hinge yoke or the hinge bracket is attachable with a second elongate beam element, a movable carriage, or a second anchor block.

18. The fixation system of claim 10 , wherein the hinge yoke further comprises a guide pin configured to penetrate a patient's joint inserted through the hinge yoke along the hinge axis.

19. A fixation system for the treatment of long bones, the system comprising:

an elongate beam element defining a longitudinal axis;

a connector element secured to the elongate beam element and comprising a rotation joint;

an anchor block connected to the connector element and structurally configured to support a first bone anchor; and

a hinge element defining a hinge axis and configured to span across a joint of a patient, allowing the first bone anchor and a second bone anchor to rotate relative to one another about the hinge axis,

wherein the rotation joint of the connector element is configured to selectively adjust the first bone anchor to different angles in relation to the elongate beam element, and

wherein the hinge element comprises slots configured to allow the hinge element to be connected to an end of the connector element such that the hinge axis can be placed in a range of heights relative to the first bone anchor.

20. The fixation system of claim 19 , wherein the hinge element is attached to a second elongate beam element, a moveable carriage, a second anchor block, or a second connector element.

21. The fixation system of claim 19 , wherein the hinge element further comprises a guide pin inserted through the hinge element along the hinge axis.

22. A fixation system for the treatment of long bones, the system comprising:

an elongate beam element defining a longitudinal axis;

a moveable carriage configured to selectively move along the elongate beam element and structurally configured to support a first bone anchor;

an anchor block supported by the elongate beam element and structurally configured to support a second bone anchor;

a connector element carried by the moveable carriage and comprising a rotation joint adapted to support the first bone anchor; and

a hinge element pivotable about a hinge axis and configured to span a joint of a patient and support the first bone anchor relative to a third bone anchor and configured to allow the first and third bone anchors to rotate relative to one another about the hinge axis,

wherein the moveable carriage is configured to selectively adjust a distance between the first bone anchor and the second bone anchor,

wherein the rotation joint of the connector element is configured to selectively adjust the first bone anchor to different angles in relation to the elongate beam element, and

wherein the hinge element is connected to the moveable carriage and is moveable with the first bone anchor such that the hinge element maintains its position relative to the first bone anchor while rotating transverse to the longitudinal axis of the elongate beam.

23. The fixation system of claim 22 , further comprising a second hinge element pivotable about a second hinge axis and configured to span a second joint of a patient and connect the second bone anchor relative to a fourth bone anchor and configured to allow the second and fourth bone anchors to rotate relative to one another about the hinge axis.

24. The fixation system of claim 22 , further comprising a second connector element carried by the elongate beam element and comprising a second rotation joint adapted to support the anchor block and second bone anchor;

wherein the second rotation joint is configured to selectively adjust the second bone anchor to different angles in relation to the elongate beam element.

Assignments (9)
SECURITY INTEREST Recorded Aug 13, 2024
From: ORTHOPEDIATRICS CORP.; ORTHEX, LLC; MD ORTHOPAEDICS, INC.; MEDTECH CONCEPTS LLC; BOSTON BRACE INTERNATIONAL, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 068591/0631 →
RELEASE OF SECURITY INTEREST Recorded Aug 13, 2024
From: MIDCAP FUNDING IV TRUST
To: ORTHOPEDIATRICS CORP.; ORTHOPEDIATRICS US DISTRIBUTION CORP.; VILEX IN TENNESSEE, INC.; ORTHEX, LLC; TELOS PARTNERS, LLC; MD ORTHOPAEDICS, INC.; ORTHOPEDIATRICS US L.P.; ORTHOPEDIATRICS IOWA HOLDCO, INC.; MEDTECH CONCEPTS LLC
Reel/Frame 068586/0861 →
SECURITY INTEREST Recorded Feb 15, 2024
From: ORTHOPEDIATRICS CORP.; ORTHOPEDIATRICS US DISTRIBUTION CORP.; VILEX IN TENNESSEE, INC.; ORTHEX, LLC; TELOS PARTNERS, LLC; MD ORTHOPAEDICS, INC.; MD INTERNATIONAL, INC.; ORTHOPEDIATRICS GP LLC; ORTHOPEDIATRICS US L.P.; ORTHOPEDIATRICS IOWA HOLDCO, INC.; MEDTECH CONCEPTS LLC
To: MIDCAP FUNDING IV TRUST
Reel/Frame 066600/0620 →
RELEASE OF SECURITY INTEREST Recorded Jan 30, 2024
From: SQUADRON CAPITAL LLC
To: ORTHOPEDIATRICS CORP.
Reel/Frame 066378/0863 →
SECURITY INTEREST Recorded Aug 4, 2022
From: ORTHOPEDIATRICS CORP.
To: SQUADRON CAPITAL LLC
Reel/Frame 060722/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2021
From: DEVISE ORTHO INC.
To: ORTHOPEDIATRICS CORP.
Reel/Frame 057914/0692 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2020
From: VECTOR SIGHT INC.
To: MULLANEY, MICHAEL W.; MILLER, STEPHEN T.; AUSTIN, WILLIAM B.; MARTENS, TODD A.
Reel/Frame 054131/0714 →
NUNC PRO TUNC ASSIGNMENT Recorded Oct 21, 2020
From: MULLANEY, MICHAEL W.; MILLER, STEPHEN T.; AUSTIN, WILLIAM B.; MARTENS, TODD A.
To: DEVISE ORTHO INC.
Reel/Frame 054131/0698 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2019
From: MULLANEY, MICHAEL W.; MILLER, STEPHEN T.; AUSTIN, WILLIAM B.; MARTENS, TODD A.
To: DEVISE ORTHO INC.
Reel/Frame 049076/0255 →
Cited By (2)
US 12,329,831 US 12,673,121